Products related to Interactions:
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Designing Interactions
A pioneer in interaction design tells the stories of designers who changed the way people use everyday things in the digital era, interviewing the founders of Google, the creator of The Sims, the inventors and developers of the mouse and the desktop, and many others. Digital technology has changed the way we interact with everything from the games we play to the tools we use at work.Designers of digital technology products no longer regard their job as designing a physical object—beautiful or utilitarian—but as designing our interactions with it.In Designing Interactions, award-winning designer Bill Moggridge introduces us to forty influential designers who have shaped our interaction with technology.Moggridge, designer of the first laptop computer (the GRiD Compass, 1981) and a founder of the design firm IDEO, tells us these stories from an industry insider's viewpoint, tracing the evolution of ideas from inspiration to outcome.The innovators he interviews—including Will Wright, creator of The Sims, Larry Page and Sergey Brin, the founders of Google, and Doug Engelbart, Bill Atkinson, and others involved in the invention and development of the mouse and the desktop—have been instrumental in making a difference in the design of interactions.Their stories chart the history of entrepreneurial design development for technology. Moggridge and his interviewees discuss such questions as why a personal computer has a window in a desktop, what made Palm's handheld organizers so successful, what turns a game into a hobby, why Google is the search engine of choice, and why 30 million people in Japan choose the i-mode service for their cell phones. And Moggridge tells the story of his own design process and explains the focus on people and prototypes that has been successful at IDEO—how the needs and desires of people can inspire innovative designs and how prototyping methods are evolving for the design of digital technology. Designing Interactions is illustrated with more than 700 images, with color throughout.Accompanying the book is a DVD that contains segments from all the interviews intercut with examples of the interactions under discussion. Interviews with:Bill Atkinson, Durrell Bishop, Brendan Boyle, Dennis Boyle, Paul Bradley, Duane Bray, Sergey Brin, Stu Card, Gillian Crampton Smith, Chris Downs, Tony Dunne, John Ellenby, Doug Englebart, Jane Fulton Suri, Bill Gaver, Bing Gordon, Rob Haitani, Jeff Hawkins, Matt Hunter, Hiroshi Ishii, Bert Keely, David Kelley, Rikako Kojima, Brenda Laurel, David Liddle, Lavrans Løvlie, John Maeda, Paul Mercer, Tim Mott, Joy Mountford, Takeshi Natsuno, Larry Page, Mark Podlaseck, Fiona Raby, Cordell Ratzlaff, Ben Reason, Jun Rekimoto, Steve Rogers, Fran Samalionis, Larry Tesler, Bill Verplank, Terry Winograd, Will Wright
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Glacier-Permafrost Interactions
Glacier-Permafrost Interactions A systematic exploration of the interactions between glaciers and permafrost In Glacier-Permafrost Interactions, experienced glaciologist Richard I.Waller delivers a comprehensive discussion of the interactions between glaciers and permafrost.The book is highly relevant to contemporary debates regarding ongoing recession of glaciers and the degradation of permafrost in the face of global warming.By integrating modern-era observations with findings from Quaternary science, this book demonstrates how glaciers and permafrost can interact and behave as an integrated system.This summary of the current thinking and emerging research on glacier-permafrost interaction also provides: Comprehensive discussions of permafrost in modern and ancient glacial environments A focused review of the distinctive characteristics of glaciers found in permafrost environments An integrated overview of the nature and impacts of glacier-permafrost interactions on the hydrology and dynamic behaviour of glaciers and their landscape expression A survey of current research efforts and future directions in the field Lying at the boundary between a research monograph and an advanced textbook, Glacier-Permafrost Interactions contributes to the future development of this rapidly evolving field by incorporating new approaches and ideas while still offering a summary of the current state of knowledge.It is perfect for advanced undergraduate students, postgraduate students, researchers, and professionals with an interest in polar and alpine environments.
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Neuroendocrine-Immune System Interactions
The concepts of the neuroendocrine system and the immune system emerged more or less simultaneously in the second half of the 20th century.Although these systems have a high degree of autonomy, it has also become clear that they interact in many ways and at different levels.This book focuses on the neuroendocrine and immune interactions that are fundamental to normal development and maintenance of health. The first introductory chapters are devoted to the historical and philosophical concepts within the field, as well as evolutionary considerations, offering critical interdisciplinary perspectives on the development of this field of research.Without attempting an exhaustive overview, the book then introduces some of the regulatory pathways that mediate interactions between the neuroendocrine and immune systems and examines modulating factors such as age and sex.In addition, several chapters address the importance of neuroendocrine-immune interactions in some disease states. Readers can expect to gain a broad perspective of neuroendocrine-immune interactions in development, health, and disease, along with a critical evaluation of current methods used in the field.Given its scope, the book is essential reading for undergraduate and graduate students with an interest in neuroendocrinology, neuroimmunology, and neuroscience, as well as postdoctoral fellows and established researchers seeking a comprehensive overview and historical perspective of the field of neuroendocrine-immune interactions.
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Groundwater-Surface Water Interactions
Recent years have seen a paradigm shift in our understanding of groundwater-surface water interactions: surface water and aquifers were long considered discrete, separate entities; they are now understood as integral components of a surface-subsurface continuum. This book provides an overview of current research advances and innovative approaches in groundwater-surface water interactions. The 20 research articles and 1 communication cover a wide range of thematic scopes, scales, and experimental and modelling methods across different disciplines (hydrology, aquatic ecology, biogeochemistry, and environmental pollution). The book identifies current knowledge gaps and reveals the challenges in establishing standardized measurement, observation, and assessment approaches. It includes current hot topcis with environmental and societal relevance such as eutrophication, retention of legacy, and emerging pollutants (e.g., pharmaceuticals and microplastics), urban water interfaces, and climate change impacts. The book demonstrates the relevance of processes at groundwater-surface water interfaces for (1) regional water balances and (2) quality and quantity of drinking water resources. As such, this book represents the long-awaited transfer of the above-mentioned paradigm shift in understanding of groundwater-surface water interactions from science to practice.
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Are interactions possible?
Yes, interactions are possible. Interactions occur when two or more entities come into contact and affect each other in some way. This can happen between people, between people and technology, or between different elements in a system. Interactions can be physical, such as a handshake, or they can be virtual, such as a conversation over the internet. Overall, interactions are a fundamental part of human and environmental dynamics.
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What are intermolecular interactions?
Intermolecular interactions are the forces of attraction or repulsion between molecules. These interactions play a crucial role in determining the physical and chemical properties of substances. Examples of intermolecular interactions include hydrogen bonding, van der Waals forces, and dipole-dipole interactions. These forces can affect properties such as boiling and melting points, solubility, and viscosity.
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Which intermolecular interactions are possible?
Intermolecular interactions that are possible include hydrogen bonding, dipole-dipole interactions, and London dispersion forces. Hydrogen bonding occurs when a hydrogen atom is bonded to a highly electronegative atom such as oxygen, nitrogen, or fluorine. Dipole-dipole interactions occur between molecules with permanent dipoles, while London dispersion forces are the weakest intermolecular interactions and occur between all molecules due to temporary fluctuations in electron distribution. These interactions play a crucial role in determining the physical properties of substances such as boiling and melting points.
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What are strong intermolecular interactions?
Strong intermolecular interactions are attractive forces between molecules that are stronger than typical van der Waals forces. These interactions can include hydrogen bonding, dipole-dipole interactions, and ion-dipole interactions. Strong intermolecular interactions play a crucial role in determining the physical properties of substances such as boiling point, melting point, and solubility. They are important in various biological processes, such as protein folding and DNA replication.
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Health Psychology : Biopsychosocial Interactions
Explore multiple disciplines to understand the impact of psychology on health, and vice versa In the newly revised 10th edition of Health Psychology: Biopsychosocial Interactions, a team of dedicated psychologists delivers an insightful and multidisciplinary demonstration of the impact of psychology and health on one another.Relying heavily on cross-cultural data, the book offers a sweeping and inclusive picture of health psychology and includes local and global research and case studies. The authors have included boxed materials in each chapter that directs the reader’s attention to the right information at the right time.Behavioral, physiological, cognitive, and social/personality viewpoints are addressed throughout the text and a strong focus on lifespan development in health and illness pervades the material.Readers will also find: Psychological perspectives on a wide variety of health issues from various parts of the worldHighlights of what works for practicing psychologists and what doesn’t when their work intersects with other fields in healthExpansive treatments of topics like the effect of stress on health, the impact of adverse childhood experiences, and the interaction between religiosity and health Health Psychology: Biopsychosocial Interactions is an essential resource for undergraduate students in psychology with an interest in health.It’s also invaluable for allied health professionals, addictions counselors, dietitians and nutritionists, and social workers seeking an authoritative resource on the effect of psychology on their daily work.
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Stockley's Herbal Medicines Interactions : A Guide to the Interactions of Herbal Medicines
Stockley's Herbal Medicines Interactions is now in its second edition and remains a unique collaboration between a team of experts in the fields of drug interactions, clinical herbal medicines, phytopharmacovigilance and regulation of herbal medicinal products.It provides an invaluable reference text for all healthcare professionals who require evidence-based information on the interactions of conventional medicines with herbal medicines, dietary supplements and nutraceuticals. Stockley's Herbal Medicines Interactions brings together available data on over 180 of the most commonly used herbal medicines, dietary supplements and nutraceuticals in highly structured, rigorously researched, and fully referenced monographs. Extensively updated for this second edition over 40 new monographs have been added for herbal medicines and dietary supplements, including Blue cohosh, Bergamot, Carnitine derivatives, Goat's rue, Hibiscus, Holy basil, Juniper, Kava and Squill.Substantial updates have been undertaken to the standing content, including revisions of the interactions of St John's wort, Milk thistle, Evening primrose oil, Ginkgo and many others. Key features include: Ease of use - structured format allows user to target key information at-a-glance.Clinically relevant - each monograph contains a concise summary on the available evidence and guidance on how the interaction can be managed.Ratings system - simple and intuitively understood, familiar to users of key drug interactions reference works. Worldwide appeal - as well as commonly used synonyms nomenclature includes approved pharmacopoeial names from Europe and the US. Indexing - full, comprehensive interactions indexing, with lead-ins from appropriate synonyms.
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Raman Scattering on Emerging Semiconductors and Oxides
Raman Scattering on Emerging Semiconductors and Oxides presents Raman scattering studies.It describes the key fundamental elements in applying Raman spectroscopies to various semiconductors and oxides without complicated and deep Raman theories. Across nine chapters, it covers:• SiC and IV-IV semiconductors,• III-GaN and nitride semiconductors,• III-V and II-VI semiconductors,• ZnO-based and GaO-based semiconducting oxides,• Graphene, ferroelectric oxides, and other emerging materials,• Wide-bandgap semiconductors of SiC, GaN, and ZnO, and• Ultra-wide gap semiconductors of AlN, Ga2O3, and graphene. Key achievements from the author and collaborators in the above fields are referred to and cited with typical Raman spectral graphs and analyses.Written for engineers, scientists, and academics, this comprehensive book will be fundamental for newcomers in Raman spectroscopy. Zhe Chuan Feng has had an impressive career spanning many years of important work in engineering and tech, including as a professor at the Graduate Institute of Photonics & Optoelectronics and Department of Electrical Engineering, National Taiwan University, Taipei; establishing the Science Exploring Lab; joining Kennesaw State University as an adjunct professor, part-time; and at the Department of Electrical and Computer Engineering, Southern Polytechnic College of Engineering and Engineering Technology.Currently, he is focusing on materials research for LED, III-nitrides, SiC, ZnO, other semiconductors/oxides, and nanostructures and has devoted time to materials research and growth of III-V and II-VI compounds, LED, III nitrides, SiC, ZnO, GaO, and other semiconductors/oxides. Professor Feng has also edited and published multiple review books in his field, alongside authoring scientific journal papers and conference/proceeding papers.He has organized symposiums and been an invited speaker at different international conferences and universities.He has also served as a guest editor for special journal issues.
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Elementary Particles and Their Interactions
The Standard Model of elementary particle physics was tentatively outlined in the early 1970s.The concepts of quarks, leptons, neutrinos, gauge symmetries, chiral interactions, Higgs boson, strong force, weak force, and electromagnetism were all put together to form a unifying theory of elementary particles.Furthermore, the model was developed within the context of relativistic quantum field theory, making it compatible with all of the laws of Einstein's Special Relativity.The successes of the Standard Model over the years have been tremendous and enduring, leading up to the recent discovery and continuing study of the Higgs boson. This book is a comprehensive and technical introduction to Standard Model physics.Martin and Wells provide readers who have no prior knowledge of quantum field theory or particle physics a firm foundation into the fundamentals of both.The emphasis is on obtaining practical knowledge of how to calculate cross-sections and decay rates.There is no better way to understand the necessary abstract knowledge and solidify its meaning than to learn how to apply it to the computation of observables that can be measured in a laboratory. Beginning graduate students, both experimental and theoretical, and advanced undergraduate students interested in particle physics, will find this to be an ideal one-semester textbook to begin their technical learning of elementary particle physics.
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Why are social interactions exhausting?
Social interactions can be exhausting for a variety of reasons. One reason is that they require us to constantly monitor and adjust our behavior to fit social norms and expectations. This can be mentally taxing and draining. Additionally, social interactions often involve navigating complex social dynamics, which can be emotionally draining. Finally, for introverted individuals, social interactions can be exhausting because they require a lot of energy to engage with others and can lead to feelings of overstimulation.
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What happens in interpersonal interactions?
Interpersonal interactions involve the exchange of verbal and nonverbal communication between two or more people. During these interactions, individuals engage in various behaviors such as listening, speaking, and nonverbal cues like eye contact and body language. These interactions can lead to the sharing of information, building of relationships, and the negotiation of social dynamics. Additionally, interpersonal interactions can also involve the expression of emotions, the establishment of rapport, and the resolution of conflicts.
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What are the interactions of SSRI?
SSRIs, or selective serotonin reuptake inhibitors, work by increasing the levels of serotonin in the brain. This increase in serotonin helps to regulate mood, emotions, and behavior. The interactions of SSRIs can include potential side effects such as nausea, insomnia, sexual dysfunction, and weight gain. It is important to be cautious when taking SSRIs with other medications that also affect serotonin levels, as this can lead to a condition called serotonin syndrome, which can be serious and even life-threatening. It is important to consult with a healthcare provider before starting or stopping any medications while taking SSRIs.
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What are interspecies interactions in biology?
Interspecies interactions in biology refer to the relationships and interactions between different species in an ecosystem. These interactions can be categorized as mutualistic, where both species benefit, commensalistic, where one species benefits and the other is unaffected, or parasitic, where one species benefits at the expense of the other. These interactions play a crucial role in shaping the dynamics of ecosystems, influencing population sizes, distribution patterns, and overall biodiversity. Studying interspecies interactions is important for understanding the complex web of relationships that exist in nature and how they impact the functioning of ecosystems.
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